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Isoquinoline 2-oxide, synthesis

The one report of a true [3-1-3] cyclization occurs in the only reported synthesis of the pyrazino[2,3-c]isoquinoline ring system. The isoquinolino fused derivative (451) was isolated from dimerization of an intermediate iminoquinone formed by air oxidation of the unstable 4-amino-2-methyltetrahydroisoquinolin-l-one (450) 75JOC1760). [Pg.259]

Pyridazino[4,5 -c]isoquinoIine, 6-aryI-synthesis, 3, 244 Pyridazino[3,4-c]isoquinoIines alkylation, 3, 238 JV-oxide, 3, 327 synthesis, 3, 247-248 Pyridazino[4,3-c]isoquinolines synthesis, 3, 247 Pyridazino[4,5-c]isoquinolines alkylation, 3, 238 Pyridazin-3(2H)-one, 6-acryIoxy-polymers, 1, 288... [Pg.782]

Isopulegol, 24 517-519, 526 Isoquinoline. See also Isoquinolines reduction of, 27 201 uses for, 27 206-208 Isoquinoline derivatives. See also Isoquinolines drugs, 27 207—208t synthesis of, 27 201-206 uses for, 27 206-208 Isoquinoline TV-oxide, 27 200-201 Isoquinolines, 27 182, 200-208 alkyl, 27 205... [Pg.497]

Alternatively, a P-methoxy-P-phenylethylamine can be used to circumvent the oxidation step after the conventional Bischler-Naperialski cyclization. Here, when treated with the phosphorus reagent the amide (R = OMe) undergoes both cyclization and the elimination of methanol to give the isoquinoline (R = H) directly. This is known as the Pictet-Gams modification of the Bischler-Napieralski synthesis. [Pg.53]

Zinc chloride-doped natural phosphate was shown to have catalytic behavior in the 1,3-dipolar cycloadditions of nucleoside acetylenes with azides to form triazolonucleosides <99SC1057>. A soluble polymer-supported 1,3-dipolar cycloaddition of carbohydrate-derived 1,2,3-triazoles has been reported <99H(51)1807>. 2-Styrylchromones and sodium azide were employed in the synthesis of 4(5)-aryl-5(4)-(2-chromonyl)-1,2,3-triazoles <99H(51)481>. Lead(IV) acetate oxidation of mixed bis-aroyl hydrazones of biacetyl led to l-(a-aroyloxyarylideneamino)-3,5-dimethyl-l,2,3-triazoles <99H(51)599>. Reaction of 1-amino-3-methylbenzimidazolium chloride with lead(fV) acetate afforded l-methyl-l/f-benzotriazole <99BML961>. Hydrogenation reactions of some [l,2,3]triazolo[l,5-a]pyridines, [l,2,3]triazolo[l,5-a]quinolines, and [l,2,3]triazolo[l,5-a]isoquinolines were studied <99T12881>. [Pg.172]

Aiylisoquinolines can be prepared by Suzuki coupling of the 4-bromoderivatives <99JOC1407>. This methodology was used in the synthesis of dinapsoline. A synthesis of 4-alkylcarbonylmethylidene isoquinolines was reported using a modified Jones oxidation and alkene acylation conditions <99H(51)2311>. [Pg.249]

The reaction of o-nitrobenzaldehydes with some benzene derivatives in the presence of strong acid (H2S04, PPA) is a classical synthesis of acridinol N-oxides (373) (37BSF240) The synthesis works for benzyl alcohol, benzene, toluene and halobenzenes, but not for benzoic acid, benzonitrile, dimethylaniline, or nitrobenzene. Isoquinoline N-oxides (374) have been obtained from o-bromobenzaldoxime or the acetophenone derivative, and active methylene compounds with copper bromide and sodium hydride (77S760). The azobenzene cobalt tricarbonyl (375) reacts with hexafluorobut-2-yne to give a quinol-2-one (72CC1228), and the 3,4,5-tricyanopyridine (376) is formed when tetracyanoethylene reacts with an enaminonitrile (80S471). [Pg.449]

The photochemical electrocyclization of conjugated iminium salts 160, formed by protonation of 2-azadienes 159, led to isoquinolin-4-ones 162, presumably through hydrolysis and oxidation of the dihydroisoquinoline intermediates 161 (85TL5213) (Scheme 39). A closely related reaction served as the key step for a short synthesis of the pentacyclic marine alkaloid ascididemin as reported by Moody, Rees, and Thomas [90TL(31)4375 92T3589] the central reaction involves a 67r-electron pho-tocyclization of a syn- aza stilbene in sulfuric acid. [Pg.34]


See other pages where Isoquinoline 2-oxide, synthesis is mentioned: [Pg.539]    [Pg.539]    [Pg.539]    [Pg.539]    [Pg.679]    [Pg.679]    [Pg.679]    [Pg.691]    [Pg.856]    [Pg.186]    [Pg.195]    [Pg.228]    [Pg.457]    [Pg.218]    [Pg.151]    [Pg.178]    [Pg.381]    [Pg.714]    [Pg.380]    [Pg.616]    [Pg.124]    [Pg.398]    [Pg.10]    [Pg.103]    [Pg.346]    [Pg.538]    [Pg.167]    [Pg.62]    [Pg.72]    [Pg.408]    [Pg.413]    [Pg.436]    [Pg.538]   
See also in sourсe #XX -- [ Pg.826 ]




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Isoquinoline synthesis

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